Patents by Inventor Ian A. Harding

Ian A. Harding has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 9052298
    Abstract: A filling apparatus for filling a microplate. The microplate can comprise a plurality of wells each sized to receive an assay. A substrate can comprise a first surface and an opposing second surface, a first assay input port for receiving the assay disposed on the first surface, a plurality of staging capillaries extending through the substrate, and a first plurality of microfluidic channels fluidly coupling the first assay input port with at least one of the plurality of staging capillaries. Each of the plurality of staging capillaries can comprise an inlet and an outlet and be sized to receive the assay.
    Type: Grant
    Filed: March 16, 2011
    Date of Patent: June 9, 2015
    Assignee: APPLIED BIOSYSTEMS, LLC
    Inventors: Mark T. Reed, Albert L. Carrillo, Ian A. Harding
  • Publication number: 20150133758
    Abstract: Correction for initial variation in thickness of a polymer layer and for changes in the coating thickness that occur after implantation of a biosensor and therefore provides substantial increase in the accuracy and lifetime of implantable sensors is done using a factor derived from the decay of potential.
    Type: Application
    Filed: January 21, 2015
    Publication date: May 14, 2015
    Inventors: Sridhar Iyengar, Ian Harding
  • Patent number: 9005424
    Abstract: A method is provided for determining analyte concentrations, for example glucose concentrations, that utilizes a dynamic determination of the appropriate time for making a glucose measurement, for example when a current versus time curve substantially conforms to a Cottrell decay, or when the current is established in a plateau region. Dynamic determination of the time to take the measurement allows each strip to operate in the shortest appropriate time frame, thereby avoiding using an average measurement time that may be longer than necessary for some strips and too short for others.
    Type: Grant
    Filed: November 25, 2013
    Date of Patent: April 14, 2015
    Assignee: Agamatrix, Inc.
    Inventors: Steven Diamond, Ian Harding, Sridhar G. Iyengar, Baoguo Wei
  • Patent number: 8999242
    Abstract: A device for measuring blood coagulation time is formed from a first substrate; a second substrate; a spacer layer disposed between the first and second substrates, said spacer layer having an opening formed therein defining a sample receiving chamber, a vented sink chamber, and an elongated reservoir forming a conduit for liquid movement between the sample receiving chamber and the sink chamber; a first electrode disposed on the first substrate, said first electrode being exposed in the reservoir portion through a first opening in the spacer layer; and a second electrode disposed on the second substrate, said second electrode being exposed in the reservoir portion through a second opening in the spacer layer. The device of the invention is used in combination with an apparatus that is connected to the first and second electrodes for measuring current flow between the first and second electrodes.
    Type: Grant
    Filed: November 27, 2013
    Date of Patent: April 7, 2015
    Assignee: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar, Ha Nguyen, Richard Williams, Anoop Rao
  • Publication number: 20150083610
    Abstract: The presence of a select analyte in the sample is evaluated in an an electrochemical system using a conduction cell-type apparatus. A potential or current is generated between the two electrodes of the cell sufficient to bring about oxidation or reduction of the analyte or of a mediator in an analyte-detection redox system, thereby forming a chemical potential gradient of the analyte or mediator between the two electrodes After the gradient is established, the applied potential or current is discontinued and an analyte-independent signal is obtained from the relaxation of the chemical potential gradient. The analyte-independent signal is used to correct the analyte-dependent signal obtained during application of the potential or current.
    Type: Application
    Filed: October 1, 2014
    Publication date: March 26, 2015
    Inventors: Sridhar G. Iyengar, Ian Harding
  • Publication number: 20150083587
    Abstract: The ability to switch at will between amperometric measurements and potentiometric measurements provides great flexibility in performing analyses of unknowns. Apparatus and methods can provide such switching to collect data from an electrochemical cell. The cell may contain a reagent disposed to measure glucose in human blood.
    Type: Application
    Filed: August 29, 2014
    Publication date: March 26, 2015
    Inventors: Ian Harding, Sridhar G. Iyengar, Baoguo Wei, Steven Diamond, Martin Forest
  • Publication number: 20140326616
    Abstract: The presence of oxygen or red blood cells in a sample applied to an electrochemical test strip that makes use of a reduced mediator is corrected for by an additive correction factor that is determined as a function of the temperature of the sample and a measurement that reflects the oxygen carrying capacity of the sample. The measured oxygen carrying capacity can also be used to determine hematocrit and to distinguish between blood samples and control solutions applied to a test strip.
    Type: Application
    Filed: May 15, 2014
    Publication date: November 6, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Ian Harding, Richard Williams, Sridhar Iyengar
  • Patent number: 8877033
    Abstract: The presence of a select analyte in the sample is evaluated in an electrochemical system using a conduction cell-type apparatus. A potential or current is generated between the two electrodes of the cell sufficient to bring about oxidation or reduction of the analyte or of a mediator in an analyte-detection redox system, thereby forming a chemical potential gradient of the analyte or mediator between the two electrodes After the gradient is established, the applied potential or current is discontinued and an analyte-independent signal is obtained from the relaxation of the chemical potential gradient. The analyte-independent signal is used to correct the analyte-dependent signal obtained during application of the potential or current.
    Type: Grant
    Filed: August 19, 2013
    Date of Patent: November 4, 2014
    Assignee: AgaMatrix, Inc.
    Inventors: Sridhar G. Iyengar, Ian Harding
  • Patent number: 8852510
    Abstract: The ability to switch at will between amperometric measurements and potentiometric measurements provides great flexibility in performing analysis of unknowns. Apparatus and methods can provide such switching to collect data from an electrochemical cell. The cell may contain a reagent disposed to measure glucose in human blood.
    Type: Grant
    Filed: March 8, 2013
    Date of Patent: October 7, 2014
    Assignee: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar, Baoguo Wei, Steven Diamond, Martin Forest
  • Publication number: 20140262778
    Abstract: Electrochemical test cells are made with precision and accuracy by adhering an electrically resistive sheet having a bound opening to a first electrically conductive sheet. A notching opening is then punched through the electrically resistive sheet and the first electrically conductive sheet. The notching opening intersects the first bound opening in the electrically resistive sheet, and transforms the first bound opening into a notch in the electrically resistive sheet. A second electrically conductive sheet is punched to have a notching opening corresponding to that of first electrically conductive sheet, and this is adhered to the other side of the electrically resistive sheet such that the notching openings are aligned. This structure is cleaved from surrounding material to form an electrochemical cell that has a sample space for receiving a sample defined by the first and second conductive sheets and the notch in the electrically resistive sheet.
    Type: Application
    Filed: May 30, 2014
    Publication date: September 18, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar
  • Patent number: 8758594
    Abstract: The presence of oxygen or red blood cells in a sample applied to an electrochemical test strip that makes use of a reduced mediator is corrected for by an additive correction factor that is determined as a function of the temperature of the sample and a measurement that reflects the oxygen carrying capacity of the sample. The measured oxygen carrying capacity can also be used to determine hematocrit and to distinguish between blood samples and control solutions applied to a test strip.
    Type: Grant
    Filed: December 21, 2012
    Date of Patent: June 24, 2014
    Assignee: AgaMatrix, Inc.
    Inventors: Ian Harding, Richard Williams, Sridhar Iyengar
  • Patent number: 8758582
    Abstract: An electrochemical test strip is formed from a first insulating substrate layer, a second substrate layer, and an intervening insulating spacer layer. An opening in the insulating spacer layer defines a test cell which is in contact with the inner surface of the first substrate on one side and the inner surface of the second substrate on the other side. The size of the test cell is determined by the area of substrate exposed and the thickness of the spacer layer. Working and counter electrodes appropriate for the analyte to be detected are disposed on the first insulating substrate in a location within the test cell. The working and counter electrodes are associated with conductive leads that allow The second substrate is conductive at least in a region facing the working and counter electrodes. No functional connection of this conductive surface of the second substrate to the meter is required.
    Type: Grant
    Filed: July 21, 2008
    Date of Patent: June 24, 2014
    Assignee: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar Iyengar
  • Publication number: 20140162264
    Abstract: Systems and methods for multiple analyte detection include a system for distribution of a biological sample that includes a substrate, wherein the substrate includes a plurality of sample chambers, a sample introduction channel for each sample chamber, and a venting channel for each sample chamber. The system may further include a preloaded reagent contained in each sample chamber and configured for nucleic acid analysis of a biological sample that enters the substrate and a sealing instrument configured to be placed in contact with the substrate to seal each sample chamber so as to substantially prevent sample contained in each sample chamber from flowing out of each sample chamber. The substrate can be constructed of detection-compatible and assay-compatible materials.
    Type: Application
    Filed: December 2, 2013
    Publication date: June 12, 2014
    Applicant: APPLIED BIOSYSTEMS, LLC
    Inventors: Min Yue, David M. Liu, Joy Roy, Yuh-Min Chiang, Joon Mo Yang, Dennis Lehto, Charles S. Vann, Nigel P. Beard, Ian A. Harding, John R. Van Camp, Alexander Dromaretsky, Sergey V. Ermakov, Mark F. Oldham, Maryam Shariati, Umberto Ulmanella
  • Publication number: 20140151222
    Abstract: The ability to switch at will between amperometric measurements and potentiometric measurements provides great flexibility in performing analyses of unknowns. Apparatus and methods can provide such switching to collect data from an electrochemical cell. The cell may contain a reagent disposed to measure glucose in human blood.
    Type: Application
    Filed: November 25, 2013
    Publication date: June 5, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar, Baoguo Wei, Steven Diamond, Martin Forest
  • Publication number: 20140116894
    Abstract: A device for measuring blood coagulation time is formed from a first substrate; a second substrate; a spacer layer disposed between the first and second substrates, said spacer layer having an opening formed therein defining a sample receiving chamber, a vented sink chamber, and an elongated reservoir forming a conduit for liquid movement between the sample receiving chamber and the sink chamber; a first electrode disposed on the first substrate, said first electrode being exposed in the reservoir portion through a first opening in the spacer layer; and a second electrode disposed on the second substrate, said second electrode being exposed in the reservoir portion through a second opening in the spacer layer. The device of the invention is used in combination with an apparatus that is connected to the first and second electrodes for measuring current flow between the first and second electrodes.
    Type: Application
    Filed: November 27, 2013
    Publication date: May 1, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar, Ha Nguyen, Richard Williams, Anoop Rao
  • Publication number: 20140083870
    Abstract: A method is provided for determining analyte concentrations, for example glucose concentrations, that utilizes a dynamic determination of the appropriate time for making a glucose measurement, for example when a current versus time curve substantially conforms to a Cottrell decay, or when the current is established in a plateau region. Dynamic determination of the time to take the measurement allows each strip to operate in the shortest appropriate time frame, thereby avoiding using an average measurement time that may be longer than necessary for some strips and too short for others.
    Type: Application
    Filed: November 25, 2013
    Publication date: March 27, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Steven Diamond, Ian Harding, Sridhar G. Iyentar, Baguo Wei
  • Publication number: 20140048425
    Abstract: The presence of a select analyte in the sample is evaluated in an an electrochemical system using a conduction cell-type apparatus. A potential or current is generated between the two electrodes of the cell sufficient to bring about oxidation or reduction of the analyte or of a mediator in an analyte-detection redox system, thereby forming a chemical potential gradient of the analyte or mediator between the two electrodes After the gradient is established, the applied potential or current is discontinued and an analyte-independent signal is obtained from the relaxation of the chemical potential gradient. The analyte-independent signal is used to correct the analyte-dependent signal obtained during application of the potential or current.
    Type: Application
    Filed: August 19, 2013
    Publication date: February 20, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Sridhar G. Iyengar, Ian Harding
  • Patent number: 8623280
    Abstract: A device for measuring blood coagulation time is formed from a first substrate; a second substrate; a spacer layer disposed between the first and second substrates, said spacer layer having an opening formed therein defining a sample receiving chamber, a vented sink chamber, and an elongated reservoir forming a conduit for liquid movement between the sample receiving chamber and the sink chamber; a first electrode disposed on the first substrate, said first electrode being exposed in the reservoir portion through a first opening in the spacer layer; and a second electrode disposed on the second substrate, said second electrode being exposed in the reservoir portion through a second opening in the spacer layer. The device of the invention is used in combination with an apparatus that is connected to the first and second electrodes for measuring current flow between the first and second electrodes.
    Type: Grant
    Filed: November 16, 2010
    Date of Patent: January 7, 2014
    Assignee: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar, Ha Nguyen, Richard Williams
  • Publication number: 20140001045
    Abstract: An electrochemical test device is provided having a base layer with a first electrode thereon and a top layer with a second electrode thereon. The two electrodes are separated by a spacer layer having an opening therein, such that a sample-receiving space is defined with one electrode on the top surface, the other electrodes on the bottom surface and side walls formed from edges of the opening in the spacer. Reagents for performing the electrochemical reaction are deposited on one of the electrodes and on the side walls of the sample-receiving space.
    Type: Application
    Filed: August 27, 2013
    Publication date: January 2, 2014
    Applicant: AgaMatrix, Inc.
    Inventor: Ian Harding
  • Publication number: 20140001046
    Abstract: The ability to switch at will between amperometric measurements and potentiometric measurements provides great flexibility in performing analyses of unknowns. Apparatus and methods can provide such switching to collect data from an electrochemical cell. The cell may contain a reagent disposed to measure glucose in human blood.
    Type: Application
    Filed: March 8, 2013
    Publication date: January 2, 2014
    Applicant: AgaMatrix, Inc.
    Inventors: Ian Harding, Sridhar G. Iyengar, Baoguo Wei, Steven Diamond, Martin Forest